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A Power Hardware-In-the-Loop Scheme for Load Emulation Applications

机译:用于负载仿真应用的电源硬件循环方案

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Technological innovations in electrical systems require the development of testing and validation tools that provide a safe environment and allow configuring different operating conditions. In this regard, power hardware-in-the-loop (PHIL) simulation is a suitable tool that interacts with physical components knowing as hardware under test (HuT) according to a mathematical model. In this work, a PHIL simulation for both electrical source analysis and load studies as HuT using linear and nonlinear loads is carried out. It is performed by means of an ideal transformer model (ITM) as interface algorithm along with a feedback stage using digital filtering, where a state-space control is simulated and implemented in a real-time hardware and a voltage source inverter (VSI) is used as a power amplifier. Different loads are used to validate the PHIL implementation such as resistive load, resistive-inductive load, and a nonlinear load by considering a dc motor. In this work, two HuT are used, a transformer arrangement and a power inverter.
机译:电气系统的技术创新需要开发提供安全环境的测试和验证工具,并允许配置不同的操作条件。在这方面,电源硬件循环(PHIL)仿真是一种合适的工具,其与根据数学模型的测试(小屋)的硬件相互作用。在这项工作中,进行了使用线性和非线性载荷的小屋源分析和负载研究的菲尔仿真。它通过理想的变压器模型(ITM)作为接口算法以及使用数字滤波的反馈阶段进行,其中在实时硬件中模拟和实现状态空间控制,电压源逆变器(VSI)是用作功率放大器。通过考虑直流电动机,使用不同的负载来验证诸如电阻负载,电阻载荷,电阻载荷和非线性负载之类的Phil实现。在这项工作中,使用两个小屋,变压器装置和动力逆变器。

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